Method and apparatus for estimating phase noise in wireless communication system

US2023275729A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2023275729-A1
Application numberUS-202018014667-A
CountryUS
Kind codeA1
Filing dateJul 10, 2020
Priority dateJul 10, 2020
Publication dateAug 31, 2023
Grant date

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Abstract

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A method for estimating a phase noise by a wireless device in a wireless communication system according to an embodiment of the present disclosure comprises the steps of: receiving a pre-configured pilot signal and a phase tracking reference signal (PTRS); calculating a first phase noise on the basis of the pre-configured pilot signal; calculating a common phase error (CPE) on the basis of the phase tracking reference signal (PTRS); and estimating a phase noise (PN) on the basis of the first phase noise and the common phase error (CPE). The PN is estimated through interpolation based on a specific reference point, and the specific reference point is based on the first phase noise and the CPE.

First claim

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1 - 15 . (canceled) 16 . A method performed by a user equipment (UE) in a wireless communication system, the method comprising: receiving, from a base station, signal related to a cell search, wherein the signal related to the cell search includes Primary Synchronization Signal (PSS), Secondary Synchronization Signal (SSS) and Physical Broadcast Channel (PBCH); transmitting, to the base station, a preamble for a random access procedure; receiving, from the base station, a response for the preamble; obtaining, from the base station, configuration information related to a plurality of reference signals (RSs), receiving, from the base station, a first RS; receiving, from the base station, a second RS; estimating a first phase noise (PN) based on the first RS; estimating a second PN based on the second RS; and estimating a third PN based on the first PN and the second PN, wherein the third PN is estimated through interpolation based on a specific reference point, and wherein the specific reference point is based on the first PN and the second PN. 17 . The method of claim 16 , wherein the second RS is a phase tracking reference signal (PTRS) and the first RS is transmitted in a time region allocated for a cyclic prefix (CP) of the PTRS. 18 . The method of claim 17 , wherein the first RS is transmitted in a frontmost portion of the time region allocated for the CP. 19 . The method of claim 16 , wherein the second RS is a phase tracking reference signal (PTRS) and the first RS is transmitted in a specific time region and the specific time region is positioned before the time region allocated for the CP of the PTRS. 20 . The method of claim 16 , wherein the first PN is based on an mean of phase noise during a time duration for which the first RS is transmitted and the second PN is a common phase error (CPE). 21 . The method of claim 20 , wherein at least one time function related to the third PN is determined based on the specific reference point and the first PN, and wherein a mean of integral values based on the at least one time function is equal to the CPE. 22 . The method of claim 21 , wherein the specific reference point satisfies the following equation, PN _ m ( q )= 2 CPE _PTRS( q )−½ PN _ est ( q )−½ PN _ est ( q+ 1) wherein q represents a symbol index, PN _m represents the specific reference point, CPE _PTRS represents the CPE, and PN _est represents the first PN. 23 . A user equipment (UE) operating in a wireless communication system, the UE comprising: one or more transceivers; one or more processors controlling the one or more transceivers; and one or more memories operatively connectable to the one or more processors, and storing instructions of performing operations when the estimation of the phase noise is executed by the one or more processors, wherein the operations include receiving, from a base station, signal related to a cell search, wherein the signal related to the cell search includes Primary Synchronization Signal (PSS), Secondary Synchronization Signal (SSS) and Physical Broadcast Channel (PBCH); transmitting, to the base station, a preamble for a random access procedure; receiving, from the base station, a response for the preamble; obtaining, from the base station, configuration information related to a plurality of reference signals (RSs), receiving, from the base station, a first RS; receiving, from the base station, a second RS, estimating a first phase noise (PN) based on the first RS, estimating a second PN based on the second RS, and estimating a third PN based on the first PN and the second PN, wherein the third PN is estimated through interpolation based on a specific reference point, and wherein the specific reference point is based on the first PN and the second PN. 24 . The UE of claim 23 , wherein the second RS is a phase tracking reference signal (PTRS) and the first RS is transmitted in a time region allocated for a cyclic prefix (CP) of the PTRS. 25 . The UE of claim 23 , wherein the second RS is a phase tracking reference signal (PTRS) and the first RS is transmitted in a specific time region and the specific time region is positioned before the time region allocated for the CP of the PTRS. 26 . The UE of claim 23 , wherein the first PN is based on an mean of the phase noise during a time duration for which the first RS is transmitted and the second PN is a common phase error (CPE). 27 . The UE of claim 26 , wherein at least one time function related to the third PN is determined based on the specific reference point and the first PN, and wherein a mean of integral values based on the at least one time function is equal to the CPE. 28 . The UE of claim 27 , wherein the specific reference point satisfies the following equation, PN _ m ( q )= 2 CPE _PTRS( q )−½ PN _ est ( q )−½ PN _ est ( q+ 1) wherein q represents a symbol index, PN _m represents the specific reference point, CPE _PTRS represents the CPE, and PN _est represents the first PN. 29 . One or more non-transitory computer-readable media storing one or more instructions, wherein one or more instructions executable by one or more processors are configured to instruct an apparatus to receive, from a base station, signal related to a cell search, wherein the signal related to the cell search includes Primary Synchronization Signal (PSS), Secondary Synchronization Signal (SSS) and Physical Broadcast Channel (PBCH); transmit, to the base station, a preamble for a random access procedure; receive, from the base station, a response for the preamble; obtain, from the base station, configuration information related to a plurality of reference signals (RSs), receive, from the base station, a first RS; receive, from the base station, a second RS, estimate a first phase noise (PN) based on the first RS, estimate a second PN based on the second RS, and estimate a third PN based on the first PN and the second PN, wherein the third PN is estimated through interpolation based on a specific reference point, and wherein the specific reference point is based on the first PN and the second PN.

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What does patent US2023275729A1 cover?
A method for estimating a phase noise by a wireless device in a wireless communication system according to an embodiment of the present disclosure comprises the steps of: receiving a pre-configured pilot signal and a phase tracking reference signal (PTRS); calculating a first phase noise on the basis of the pre-configured pilot signal; calculating a common phase error (CPE) on the basis of the …
Who is the assignee on this patent?
Lg Electronics Inc, Korea Advanced Inst Sci & Tech
What technology area does this patent fall under?
Primary CPC classification H04L27/2657. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Aug 31 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).